Internal forklift parking robot control system with gear tooth structure and method

A control system and robot technology, applied in the field of parking robots, can solve the problems of easy slippage of the vehicle and the inability of the vehicle to be squeezed on the fork arm, etc.

CN112459572AInactive Publication Date: 2021-03-09JIANGSU LITTLE WHITE RABBIT INTELLIGENT MFG SCI INC
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Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
Publication Date
2021-03-09
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention belongs to the technical field of parking robots, and discloses an internal forklift parking robot control system with a gear tooth structure and a control method of the internal forklift parking robot control system. The internal forklift parking robot control system comprises an advancing module, a fork arm moving module, a blocking tooth moving module, a measuring module, a navigation module and a master controller. The advancing module is used for driving a parking robot to move according to an advancing control instruction sent by the master controller; the fork arm moving module is used for driving fork arms to move; the blocking tooth moving module is used for driving blocking teeth to move; the measuring module is used for detecting the wheelbase of vehicles; the navigation module is used for calculating an advancing route of the parking robot; and the master controller comprises an input and output unit, a control instruction unit, a distance judgment unit and aresistance judgment unit. After the blocking teeth make contact with a tire, the stopping positions of the fork arms are judged according to the positions of the blocking teeth, the states of the tireand the corresponding fork arms are directly and effectively reflected, and the situation that the tire falls off again due to excessive movement of the fork arms is avoided.
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Description

technical field

[0001] The invention belongs to the technical field of parking robots, and relates to an automatic equipment for moving vehicles to or from a parking space in a parking lot, in particular to a control system and a control method for an internal forklift parking robot with gear tooth structure. Background technique

[0002] With the development of the society and the improvement of the economy, the number of cars has increased sharply. The family car has become a necessary means of transportation for every household. The problem of difficult parking in every city has also followed. The driver's own method of finding a parking space to park can no longer meet the parking needs of various cities now. In order to reduce the time for finding a parking space, parking robots with different structures have appeared on the market.

[0003] Among them, a parking robot that lifts the vehicle by inserting into the bottom of the vehicle from the side and clamping the tir...

Examples

Embodiment 1

[0076] This embodiment relates to a parking robot with gear tooth structure, such as figure 1 As shown, the robot includes:

[0077] Vehicle frame 100, the vehicle frame 100 is a straight structure, and its length is fixed;

[0078] Active running device 140, the active running device 140 is installed on the vehicle frame 100, and is used to drive the vehicle frame 100 to move;

[0079] The left fork arm 200 and the right fork arm 300 with the same symmetrical structure, the left fork arm 200 and the right fork arm 300 are respectively installed on the same side of the vehicle frame 100, and the distance between them is adjustable;

[0080] Universal wheel 340, the universal wheel 340 is installed on the left fork arm 200 and the right fork arm 300, to meet the driving requirements of the parking robot, and as a supporting structure;

[0081] The left gear tooth 500 and the right gear tooth 600 with the same symmetrical structure, the left gear tooth 500 and the right gear t...

Embodiment 2

[0096] This embodiment relates to a control system and a control method for the internal forklift parking robot with gear tooth structure applicable to the first embodiment.

[0097] Such as Figure 7 As shown, the control system of the parking robot with gear tooth structure includes a traveling module, a fork arm moving module, a gear tooth moving module, a measuring module, a navigation module and a general controller.

[0098] The traveling module includes an active traveling device 140 and a universal wheel 340, which are used to drive the parking robot to move according to the traveling control instruction issued by the general controller;

[0099] The yoke moving module includes a yoke moving device 310 for driving the yoke to move;

[0100] The gear moving module includes a gear moving device 510 for driving the gear to move;

[0101] A measuring module, including a photoelectric sensor 400, is used to detect the wheelbase and wheel diameter of the vehicle, and calcu...